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Full-Text Articles in Biochemistry, Biophysics, and Structural Biology

Metabolomics As A Hypothesis-Generating Functional Genomics Tool For The Annotation Of Arabidopsis Thaliana Genes Of “Unknown Function”, Stephanie M. Quanbeck, Libuse Brachova, Alexis A. Campbell, Xin Guan, Ann Perera, Kun He, Seung Y. Rhee, Preeti Bais, Julie A. Dickerson, Philip M. Dixon, Gert Wohlgemuth, Oliver Fiehn, Lenore Barkan, Iris Lange, B. Markus Lange, Insuk Lee, Diego Cortes, Carolina Salazar, Joel Shuman, Vladimir Shulaev, David V. Huhman, Lloyd W. Sumner, Mary R. Roth, Ruth Welti, Hilal Ilarslan, Eve S. Wurtele, Basil J. Nikolau Feb 2012

Metabolomics As A Hypothesis-Generating Functional Genomics Tool For The Annotation Of Arabidopsis Thaliana Genes Of “Unknown Function”, Stephanie M. Quanbeck, Libuse Brachova, Alexis A. Campbell, Xin Guan, Ann Perera, Kun He, Seung Y. Rhee, Preeti Bais, Julie A. Dickerson, Philip M. Dixon, Gert Wohlgemuth, Oliver Fiehn, Lenore Barkan, Iris Lange, B. Markus Lange, Insuk Lee, Diego Cortes, Carolina Salazar, Joel Shuman, Vladimir Shulaev, David V. Huhman, Lloyd W. Sumner, Mary R. Roth, Ruth Welti, Hilal Ilarslan, Eve S. Wurtele, Basil J. Nikolau

Biochemistry, Biophysics and Molecular Biology Publications

Metabolomics is the methodology that identifies and measures global pools of small molecules (of less than about 1,000 Da) of a biological sample, which are collectively called the metabolome. Metabolomics can therefore reveal the metabolic outcome of a genetic or environmental perturbation of a metabolic regulatory network, and thus provide insights into the structure and regulation of that network. Because of the chemical complexity of the metabolome and limitations associated with individual analytical platforms for determining the metabolome, it is currently difficult to capture the complete metabolome of an organism or tissue, which is in contrast to genomics and ...


Computational And Experimental Analyses Converge To Reveal A Coherent Yet Malleable Aptamer Structure That Controls Chemical Reactivity, Tianjiao Wang, Julie A. Hoy, Monica H. Lamm, Marit Nilsen-Hamilton Jan 2009

Computational And Experimental Analyses Converge To Reveal A Coherent Yet Malleable Aptamer Structure That Controls Chemical Reactivity, Tianjiao Wang, Julie A. Hoy, Monica H. Lamm, Marit Nilsen-Hamilton

Biochemistry, Biophysics and Molecular Biology Publications

As short nucleic acids, aptamers in solution are believed to be structurally flexible. Consistent with this view, most aptamers examined for this property have been shown to bind their target molecules by mechanisms that can be described as “induced fit”. But, it is not known to what extent this structural flexibility affects the integrity of the target−aptamer interaction. Using the malachite green aptamer (MGA) as a model system, we show that the MGA can protect its bound target, malachite green (MG), from oxidation over several days. Protection is reversed by an oligonucleotide complementary to the MGA binding pocket. Computational ...